Ceramic teapot with thermal insulation inner layer

By inlaying stainless steel inner layer and setting air layer in the ceramic teapot, and fixing metal ice cubes with magnet sheets, the problem of moving collision of ice cubes in the ceramic teapot is solved, and the insulation performance of the teapot is improved, improving the user experience and the flavor of cold tea.

CN222853558UActive Publication Date: 2025-05-13FUJIAN QUANZHOU DASHENG KILN CERAMICS CO LTD
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Patent Information

Application Number
CN202421634268.6
Authority / Receiving Office
CN · China
Patent Type
Utility models(China)
Current Assignee / Owner
Filing Date
2024-07-11
Publication Date
2025-05-13
Estimated Expiration
2034-07-11

AI Technical Summary

Technical Problem

When using stainless steel ice cubes, the ice cubes are prone to move and hit the pot wall, causing abnormal noises, and may damage the teapot. At the same time, the ceramic teapots have insufficient insulation performance and are difficult to maintain cold for a long time.

Method used

A ceramic teapot with an insulating inner layer was designed, with a stainless steel inner layer embedded inside, and an air layer was set between the stainless steel inner layer and the ceramic pot body, and an adsorption and fixing mechanism was added to fix the metal ice, and the magnetic adsorption between the magnet sheet and the metal ice was used.

Benefits of technology

It effectively avoids the moving collision of metal ice cubes, improves the user experience, and through the combination of air layer and stainless steel inner layer, the insulation performance of the ceramic teapot is significantly improved, allowing it to keep cold for a long time and ensure the flavor of the cold tea.

✦ Generated by Eureka AI based on patent content.

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Abstract

The utility model discloses a ceramic teapot with a heat preservation inner layer. The ceramic teapot comprises a multifunctional heat preservation teapot. According to the multifunctional heat preservation teapot, the stainless steel inner layer is arranged, and the stainless steel inner layer has a low heat conduction coefficient, can effectively preserve heat and insulate heat, has good strength, is not prone to colliding with metal ice blocks to be damaged, and can provide good internal protection for the ceramic teapot body; the air layer is arranged between the stainless steel inner layer and the ceramic pot body, the air layer has good heat insulation and heat preservation effects, the heat preservation performance of the ceramic pot body is further improved, the ceramic pot body can keep cold for a long time, and the drinking flavor of cold tea is guaranteed; when metal ice blocks are placed in the ceramic pot body, the magnet piece can be magnetically attracted to the metal shell, so that the metal ice blocks are attracted and fixed to the bottom of the ceramic pot body, abnormal sound generated by moving and colliding of the metal ice blocks is avoided, and the use experience of a user is improved.
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Description

Technical Field

[0001] The utility model relates to the technical field of tea sets, in particular to a ceramic teapot with a heat-insulating inner layer. Background Art

[0002] Ceramic teapots are famous for their delicate texture, rich colors and diverse shapes. They are made of porcelain clay fired at high temperatures, and the body of the teapot has a smooth jade-like texture. They are favored by a large number of users because of their diverse appearance, rich colors and easy cleaning.

[0003] Existing patent application number: 202320701705.0 A stone-feeling lacquer ceramic teapot that is easy to clean, comprising a stone-feeling lacquer ceramic teapot body, the bottom of which is fixedly connected to a base, the top of which is sleeved with a pot lid, the left side of the stone-feeling lacquer ceramic teapot body is fixedly connected to a spout that is interconnected with the spout, and the right side of the stone-feeling lacquer ceramic teapot body is fixedly connected to a pot handle; the bottom of the inner wall of the stone-feeling lacquer ceramic teapot body is threadedly connected to a tea canister, a plurality of water holes are equidistantly arranged on the tea canister, a connecting seat is fixedly installed on the top of the inner wall of the pot lid, and a cleaning mechanism is threadedly connected to the connecting seat.

[0004] The above patent records a ceramic teapot. When using the ceramic teapot to brew cold tea, ice cubes need to be added. In order to retain the concentration of tea, some user groups choose to use stainless steel ice cubes. However, stainless steel ice cubes have a large weight. When pouring tea with a ceramic teapot, the stainless steel ice cubes are easy to move and collide with the pot wall to produce abnormal noise, which affects the user experience and is also easy to cause internal damage to the ceramic teapot. In addition, the thermal insulation structure of the ceramic teapot can be further improved so that the ceramic teapot can keep cold for a long time and ensure the flavor of the cold tea. To this end, we propose a ceramic teapot with an insulating inner layer to solve the above problems. Utility Model Content

[0005] The purpose of the utility model is to provide a ceramic teapot with a heat-insulating inner layer to solve the problems raised in the above-mentioned background technology.

[0006] In order to achieve the above-mentioned purpose, the utility model adopts the following technical scheme: a ceramic teapot with an insulating inner layer, including a multifunctional insulating teapot, the multifunctional insulating teapot including a ceramic pot body, a stainless steel inner layer, an air layer, a spout, metal ice cubes and an adsorption and fixing mechanism, the stainless steel inner layer is embedded in the ceramic pot body, an air layer is arranged between the outer wall of the stainless steel inner layer and the ceramic pot body, a spout is arranged on the front part of the outer side of the ceramic pot body, the spout is connected to the interior of the stainless steel inner layer, metal ice cubes are placed on the inner bottom surface of the stainless steel inner layer, and an adsorption and fixing mechanism is arranged on the bottom of the ceramic pot body.

[0007] Preferably, the metal ice block consists of a metal shell and a freezing liquid, wherein the metal shell is made of a magnetic metal material, and the internal cavity of the metal shell is filled with the freezing liquid.

[0008] Preferably, the surface of the metal shell is coated with a PTFE coating.

[0009] Preferably, the inner wall of the stainless steel inner layer is coated with a silicon dioxide coating.

[0010] Preferably, the adsorption and fixing mechanism includes a pot seat, a mounting groove, a screw cover and a magnet sheet. The bottom of the ceramic pot body is bonded with a pot seat, a mounting groove is centrally arranged on the bottom surface of the pot seat, a screw cover is threadedly connected to the inner side of the mounting groove, and a magnet sheet is fitted on the top surface of the screw cover, and the magnet sheet can be magnetically adsorbed to the metal shell.

[0011] Preferably, the cross-sectional area of ​​the magnet sheet is not less than half of the bottom area of ​​the ceramic pot body.

[0012] Compared with the prior art, the beneficial effects of the utility model are:

[0013] The utility model is provided with a multifunctional thermal insulation teapot. A stainless steel inner layer is provided. The stainless steel inner layer has a low thermal conductivity coefficient and can effectively keep warm and insulate. The stainless steel inner layer has good strength and is not easily damaged by collision with metal ice cubes. The ceramic pot body can be provided with good internal protection. In addition, an air layer is provided between the stainless steel inner layer and the ceramic pot body. The air layer has good thermal insulation effect, which further improves the thermal insulation performance of the ceramic pot body, so that the ceramic pot body can keep cold for a long time and ensure the drinking flavor of cold tea.

[0014] The utility model arranges an adsorption and fixing mechanism at the bottom of the ceramic kettle body. When metal ice cubes are put into the ceramic kettle body, the magnet sheet can be magnetically adsorbed to the metal shell, thereby adsorbing and fixing the metal ice cubes to the bottom of the ceramic kettle body, avoiding the metal ice cubes from moving and colliding to produce abnormal noise, thereby improving the user experience. BRIEF DESCRIPTION OF THE DRAWINGS

[0015] Figure 1 It is a schematic diagram of the structure of the utility model;

[0016] Figure 2 It is a schematic diagram of the right side cross-sectional structure of the ceramic pot body of the utility model;

[0017] Figure 3 This is a schematic diagram of the disassembled structure of the adsorption and fixing mechanism of the utility model;

[0018] Figure 4 It is a schematic diagram of the front cross-sectional structure of the metal ice block of the present utility model.

[0019] In the figure: a multifunctional heat-insulating teapot-1, a ceramic pot body-11, a stainless steel inner layer-12, an air layer-13, a spout-14, metal ice cubes-15, a metal shell-151, a freezing liquid-152, a PTFE coating-153, an adsorption fixing mechanism-16, a pot base-161, a mounting groove-162, a screw cap-163, and a magnet sheet-164. DETAILED DESCRIPTION

[0020] In order to further explain the technical solution of the present utility model, it is described in detail through specific embodiments below.

[0021] See also Figure 1-2 The utility model provides a ceramic teapot with an insulating inner layer, including a multifunctional insulating teapot 1, which includes a ceramic pot body 11, a stainless steel inner layer 12, an air layer 13, a spout 14, metal ice cubes 15 and an adsorption fixing mechanism 16. The stainless steel inner layer 12 is embedded in the ceramic pot body 11, and the stainless steel inner layer 12 has a low thermal conductivity coefficient, can effectively insulate, and has good strength, is not easily damaged by collision with the metal ice cubes 15, and can provide good internal protection for the ceramic pot body 11. An air layer 13 is arranged between the outer wall of the stainless steel inner layer 12 and the ceramic pot body 11, and the air layer 13 has a good thermal insulation effect. A spout 14 is arranged on the front outer side of the ceramic pot body 11, and the spout 14 is connected to the inside of the stainless steel inner layer 12. The metal ice cubes 15 are placed on the inner bottom surface of the stainless steel inner layer 12, and an adsorption fixing mechanism 16 is arranged on the bottom of the ceramic pot body 11.

[0022] See also Figure 4 The utility model provides a ceramic teapot with an insulating inner layer. The metal ice block 15 is composed of a metal shell 151 and a freezing liquid 152. The metal shell 151 is made of a magnetic metal material. The internal cavity of the metal shell 151 is filled with the freezing liquid 152. The freezing liquid 152 can increase the cold storage capacity of the metal ice block 15 and ensure the icing effect.

[0023] To further explain, the surface of the metal shell 151 is coated with a PTFE coating 153. The PTFE coating 153 is a non-sticky, high temperature resistant, corrosion resistant, waterproof, electrically insulating, non-toxic and odorless synthetic material. It is a safe and non-toxic food-grade anti-corrosion coating to improve the anti-corrosion performance of the metal shell 151.

[0024] It is further explained that the inner wall of the stainless steel inner layer 12 is coated with a silicon dioxide coating, which can effectively reduce the thermal conductivity of the stainless steel inner layer 12 and further improve the thermal insulation effect.

[0025] See also Figure 3The utility model provides a ceramic teapot with an insulating inner layer. The adsorption and fixing mechanism 16 includes a pot seat 161, a mounting groove 162, a screw cover 163 and a magnet sheet 164. The bottom of the ceramic pot body 11 is bonded with the pot seat 161, the bottom surface of the pot seat 161 is centrally provided with a mounting groove 162, the inner side of the mounting groove 162 is threadedly connected with a screw cover 163, and the top surface of the screw cover 163 is fitted with a magnet sheet 164. The magnet sheet 164 can be magnetically adsorbed with the metal shell 151, so as to adsorb and fix the metal ice cube 15 to the bottom of the ceramic pot body 11 to prevent the metal ice cube 15 from moving and colliding to produce abnormal noise.

[0026] It is further explained that the cross-sectional area of ​​the magnet sheet 164 is not less than half of the bottom area of ​​the ceramic kettle body 11, so as to ensure that the magnet sheet 164 has a sufficiently large adsorption range and can simultaneously adsorb and fix multiple metal ice cubes 15.

[0027] Here’s how it works:

[0028] First, before using the multifunctional thermal insulation teapot 1 to make cold tea, first take out the metal ice cube 15 and put it into the refrigerator to freeze until it is fully cooled. By filling the internal cavity of the metal shell 151 with a freezing liquid 152, the freezing liquid 152 can increase the cold storage capacity of the metal ice cube 15 and ensure the chilling effect.

[0029] Second, when using the multifunctional thermal insulation teapot 1 to brew cold tea, first add the tea into the ceramic pot body 11, and then put the metal ice cubes 15 in to quickly lower the temperature of the tea. By setting a stainless steel inner layer 12 inside the ceramic pot body 11, the stainless steel inner layer 12 has a low thermal conductivity coefficient and can effectively keep warm and insulate. It also has good strength and is not easily damaged by collision with the metal ice cubes 15, and can provide good internal protection for the ceramic pot body 11. In addition, by setting an air layer 13 between the stainless steel inner layer 12 and the ceramic pot body 11, the air layer 13 has a good thermal insulation effect, which further improves the thermal insulation performance of the ceramic pot body 11, so that the ceramic pot body 11 can keep cold for a long time and ensure the drinking flavor of the cold tea.

[0030] Third, by setting an adsorption and fixing mechanism 16 at the bottom of the ceramic kettle body 11, when the metal ice cube 15 needs to be used, the ceramic kettle body 11 is lifted to expose the kettle seat 161, and then the screw cover 163 is screwed into the installation groove 162 to complete the installation of the magnet sheet 164 and the kettle seat 161. When the metal ice cube 15 is placed in the ceramic kettle body 11, the magnet sheet 164 can be magnetically adsorbed with the metal shell 151, so that the metal ice cube 15 is adsorbed and fixed to the bottom of the ceramic kettle body 11, avoiding the movement and collision of the metal ice cube 15 to produce abnormal noise, thereby improving the user experience. When the metal ice cube 15 needs to be taken out, the screw cover 163 is unscrewed from the installation groove 162. After the metal ice cube 15 loses the magnetic fixation of the magnet sheet 164, it can be directly poured out from the inside of the ceramic kettle body 11, which is convenient for removal and cleaning.

[0031] The above are only preferred examples of the present invention and are not intended to limit the present invention. Although the present invention is described in detail with reference to the above embodiments, those skilled in the art can still modify the technical solutions described in the above embodiments or replace some of the technical features therein by equivalents. Any modification, equivalent replacement, improvement, etc. made within the spirit and principle of the present invention shall be included in the protection scope of the present invention.

Claims

1. A ceramic teapot with a heat-insulating inner layer, characterized in that: The invention comprises a multifunctional heat-insulating teapot (1), wherein the multifunctional heat-insulating teapot (1) comprises a ceramic pot body (11), a stainless steel inner layer (12), an air layer (13), a spout (14), metal ice cubes (15) and an adsorption fixing mechanism (16); the stainless steel inner layer (12) is embedded in the ceramic pot body (11); an air layer (13) is provided between the outer wall of the stainless steel inner layer (12) and the ceramic pot body (11); a spout (14) is provided at the outer front of the ceramic pot body (11); the spout (14) is connected to the inside of the stainless steel inner layer (12); metal ice cubes (15) are placed on the inner bottom surface of the stainless steel inner layer (12); and an adsorption fixing mechanism (16) is provided at the bottom of the ceramic pot body (11).

2. A ceramic teapot with a heat-insulating inner layer according to claim 1, characterized in that: The metal ice block (15) is composed of a metal shell (151) and a freezing liquid (152), wherein the metal shell (151) is made of a magnetic metal material, and the internal cavity of the metal shell (151) is filled with the freezing liquid (152).

3. A ceramic teapot with a heat-insulating inner layer according to claim 2, characterized in that: The surface of the metal shell (151) is coated with a PTFE coating (153).

4. The ceramic teapot with a heat-insulating inner layer according to claim 1, characterized in that: The inner wall of the stainless steel inner layer (12) is coated with a silicon dioxide coating.

5. The ceramic teapot with a heat-insulating inner layer according to claim 2, characterized in that: The adsorption and fixing mechanism (16) comprises a pot seat (161), a mounting groove (162), a screw cover (163) and a magnet sheet (164); the pot seat (161) is bonded to the bottom of the ceramic pot body (11); the mounting groove (162) is centrally arranged on the bottom surface of the pot seat (161); the screw cover (163) is threadedly connected to the inner side of the mounting groove (162); the magnet sheet (164) is fitted on the top surface of the screw cover (163); and the magnet sheet (164) can be magnetically adsorbed to the metal shell (151).

6. A ceramic teapot with a heat-insulating inner layer according to claim 5, characterized in that: The cross-sectional area of ​​the magnet sheet (164) is not less than half the bottom area of ​​the ceramic pot body (11).

Citation Information

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